Hutchins James R A, Clarke Paul R
Biomedical Research Centre, Ninewells Hospital and Medical School, University of Dundee, Dundee Scotland, UK.
Cell Cycle. 2004 Jan;3(1):41-5.
The mitotic inducer Cdc25 phosphatase controls the activation of Cdc2/cyclin B protein kinase and entry into mitosis in eukaryotic cells. Cdc25C is highly regulated by multiple post-translational modifications within its N-terminal regulatory domain and site-specific protein interactions. Phosphorylation of one inhibitory site targeted by multiple kinases determines the timing of Cdc25C activation and arrests cells in G2 in response to checkpoint, stress, developmental and extracellular signals. In mitosis, phosphorylation of several Ser/Thr residues and Pin1-catalysed peptidyl-proline isomerisation produces activation. Phosphorylation of one activating site is antagonistic to the proximal inhibitory site and maintains Cdc25C activity during mitosis. Phosphorylation and interacting proteins also modulate the nuclear import and export signals on Cdc25C, inducing dramatic changes in its localisation within the cell. Thus, the regulation of Cdc25C activity and localization integrates multiple signals that govern the decision to enter mitosis.
有丝分裂诱导因子Cdc25磷酸酶控制着Cdc2/细胞周期蛋白B蛋白激酶的激活以及真核细胞进入有丝分裂的过程。Cdc25C在其N端调节结构域内受到多种翻译后修饰和位点特异性蛋白质相互作用的高度调控。多个激酶靶向的一个抑制位点的磷酸化决定了Cdc25C激活的时间,并使细胞在G2期因检查点、应激、发育和细胞外信号而停滞。在有丝分裂过程中,几个丝氨酸/苏氨酸残基的磷酸化以及Pin1催化的肽基脯氨酸异构化产生激活作用。一个激活位点的磷酸化与近端抑制位点相互拮抗,并在有丝分裂期间维持Cdc25C的活性。磷酸化和相互作用蛋白还调节Cdc25C上的核输入和输出信号,导致其在细胞内的定位发生显著变化。因此,Cdc25C活性和定位的调节整合了多个信号,这些信号决定了进入有丝分裂的决策。